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Improving performance and the reliability of off-site pre-cast concrete production operations using simulation optimisation

机译:通过模拟优化提高异地预制混凝土生产操作的性能和可靠性

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The increased use of precast components in building and heavy civil engineering projects has led to the introduction of innovative management and scheduling systems to meet the demand for increased reliability, efficiency and cost reduction. The aim of this study is to develop an innovative crew allocation system that can efficiently allocate crews of workers to labour-intensive repetitive processes. The objective is to improve off-site pre-cast production operations using Multi-Layered Genetic Algorithms. The Multi-Layered concept emerged in response to the modelling requirements of different sets of labour inputs. As part of the techniques used in developing the Crew Allocation “SIM_Crew” System, a process mapping methodology is used to model the processes of precast concrete operations and to provide the framework and input required for simulation. Process simulation is then used to model and imitate all production processes, and Genetic Algorithms are embedded within the simulation model to provide a rapid and intelligent search. A Multi-Layered chromosome is used to store different sets of inputs such as crews working on different shifts and process priorities. A ‘Class Interval’ selection strategy is developed to improve the chance of selecting the most promising chromosomes for further investigation. Multi-Layered Dynamic crossover and mutation operators are developed to increase the randomness of the searching mechanism for solutions in the solution space. The results illustrate that adopting different combinations of crews of workers has a substantial impact on the labour allocation cost and this should lead to increased efficiency and lower production cost. In addition, the results of the simulation show that minimum throughput time, minimum process-waiting time and optimal resource utilisation profiles can be achieved when compared to a real-life case study.
机译:在建筑和重型土木工程项目中越来越多地使用预制构件,因此引入了创新的管理和调度系统,以满足对提高可靠性,效率和降低成本的需求。这项研究的目的是开发一种创新的人员分配系统,该系统可以有效地将工人的人员分配给劳动密集的重复过程。目的是使用多层遗传算法来改善异地预制生产操作。多层概念的出现是为了响应不同劳动力输入集的建模要求。作为用于开发人员分配“ SIM_Crew”系统的技术的一部分,过程映射方法用于对预制混凝土操作过程进行建模,并提供仿真所需的框架和输入。然后,使用过程仿真来建模和模仿所有生产过程,并将遗传算法嵌入到仿真模型中以提供快速而智能的搜索。多层染色体用于存储不同的输入集,例如工作人员在不同的班次和处理优先级上工作。制定了“间隔间隔”选择策略,以提高选择最有希望的染色体进行进一步研究的机会。开发了多层动态交叉和变异算子,以增加解空间中解的搜索机制的随机性。结果表明,采用不同的工人组合会对劳动力分配成本产生重大影响,这应该导致效率提高和生产成本降低。此外,仿真结果表明,与实际案例研究相比,可以实现最短吞吐时间,最短流程等待时间和最佳资源利用状况。

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